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Investigation of Periodically Unsteady Flow in a Radial Pump by CFD Simulations and LDV Measurements

机译:通过CFD模拟和LDV测量研究径向泵中的周期性非恒定流

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摘要

The periodically unsteady flow fields in a low specific speed radial diffuser pump have been investigated both numerically and experimentally for the design condition (Q_(des)) and also one part-load condition (0.5Q_(des)).Three-dimensional, unsteady Reynolds-averaged Navier-Stokes equations are solved on high-quality structured grids with the shear stress transport turbulence model by using the CFD (computational fluid dynamics) code CFX-lo. Furthermore, two-dimensional laser Doppler velocimetry (LDV) measurements are successfully conducted in the interaction region between the impeller and the vaned diffuser, in order to capture the complex flow with abundant measurement data and to validate the CFD results. The analysis of the obtained results has been focused on the behavior of the periodic velocity field and the turbulence field, as well as the associated unsteady phenomena due to the unsteady interaction. In addition, the comparison between CFD and LDV results has also been addressed. The blade orientation effects caused by the impeller rotation are quantitatively examined and detailedly compared with the turbulence effect. This work offers a good data set to develop the comprehension of the impeller-diffuser interaction and how the flow varies with relative impeller position to the diffuser in radial diffuser pumps.
机译:针对设计条件(Q_(des))和一个部分负荷条件(0.5Q_(des))进行了数值和实验研究,研究了低比转速径向扩散泵中的周期性非稳态流场。三维非稳态通过使用CFD(计算流体动力学)代码CFX-lo,在具有剪切应力传递湍流模型的高质量结构化网格上求解雷诺平均Navier-Stokes方程。此外,在叶轮和叶片式扩散器之间的相互作用区域成功进行了二维激光多普勒测速(LDV)测量,以捕获具有丰富测量数据的复杂流并验证CFD结果。对获得的结果的分析集中于周期性速度场和湍流场的行为,以及由于非稳态相互作用而引起的相关非稳态现象。此外,CFD和LDV结果之间的比较也已解决。对叶轮旋转引起的叶片定向效应进行了定量检查,并与湍流效应进行了详细比较。这项工作提供了一个很好的数据集,以发展对叶轮-扩压器相互作用的理解,以及在径向扩散器泵中流量如何随相对于叶轮的相对位置而变化。

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